Decentralized Disturbance Rejection Control of Triangularly Coupled Loop Thermosyphon System

Fuente: arXiv
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Main Authors: Dey, Novel Kumar, Wu, Yan
Format: Preprint
Published: 2025
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author Dey, Novel Kumar
Wu, Yan
author_facet Dey, Novel Kumar
Wu, Yan
contents In this paper, we investigate the stability of a triangularly coupled triple loop thermosyphon system with momentum and heat exchange at the coupling point as well as the existence of disturbances. The controller consists of a single, local state feedback. From the stability analysis, we obtain explicit bounds on the feedback gains, which depend on the Rayleigh numbers and the momentum coupling parameter, but independent of the thermal coupling parameter. The existence of the stability bounds allows us to design decentralized adaptive controllers to automatically search for the feasible gains when the system parameters are unknown. In the case of existing disturbances in the system, we approximate the disturbances via an extended state observer for the purpose of disturbance rejection. Numerical results are given to demonstrate the performance of the proposed decentralized disturbance rejection controller design.
format Preprint
id arxiv_https___arxiv_org_abs_2510_15197
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Decentralized Disturbance Rejection Control of Triangularly Coupled Loop Thermosyphon System
Dey, Novel Kumar
Wu, Yan
Optimization and Control
In this paper, we investigate the stability of a triangularly coupled triple loop thermosyphon system with momentum and heat exchange at the coupling point as well as the existence of disturbances. The controller consists of a single, local state feedback. From the stability analysis, we obtain explicit bounds on the feedback gains, which depend on the Rayleigh numbers and the momentum coupling parameter, but independent of the thermal coupling parameter. The existence of the stability bounds allows us to design decentralized adaptive controllers to automatically search for the feasible gains when the system parameters are unknown. In the case of existing disturbances in the system, we approximate the disturbances via an extended state observer for the purpose of disturbance rejection. Numerical results are given to demonstrate the performance of the proposed decentralized disturbance rejection controller design.
title Decentralized Disturbance Rejection Control of Triangularly Coupled Loop Thermosyphon System
topic Optimization and Control
url https://arxiv.org/abs/2510.15197